Angewandte Chemie International Edition · 2022 · 109 citations · 55 references
Optical MaterialsEngineeringOrganic ElectronicsResponsive PolymersChemistryTransparent FilmsChemical EngineeringPhosphorescence ImagingLight PrintingErasable LightPrinted ElectronicsPhotopolymer NetworkThermally Activated Delayed FluorescencePolymer ChemistryBiophysicsMaterials SciencePhotochemistryPhotonic MaterialsUop PropertiesPhotochromismOrganic Charge-transfer CompoundEpoxy PolymersPolymer ScienceConjugated PolymerThree‐dimensional Covalent NetworksOptoelectronicsPhosphorescence
In this work, an efficient polymer-based organic afterglow system, which shows reversible photochromism, switchable ultralong organic phosphorescence (UOP), and prominent water and chemical resistance simultaneously, has been developed for the first time. By doping phenoxazine (PXZ) and 10-ethyl-10H-phenoxazine (PXZEt) into epoxy polymers, the resulting PXZ@EP-0.25 % and PXZEt@EP-0.25 % films show unique photoactivated UOP properties, with phosphorescence quantum yields and lifetimes up to 10.8 % and 845 ms, respectively. It is found that the steady-state luminescence and UOP of PXZ@EP-0.25 % are switchable by light irradiation and thermal annealing. Moreover, the doped films can still produce conspicuous UOP after soaking in water, strong acid and base, and organic solvents for more than two weeks, exhibiting outstanding water and chemical resistance. Inspired by these exciting results, the PXZ@EP-0.25 % has been successfully exploited as an erasable transparent film for light printing.
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Excited State Modulation for Organic Afterglow: Materials and Applications
Shen Xu, Runfeng Chen, Chao Zheng et al. · Advanced Materials · 2016 · 818 citations
Confining isolated chromophores for highly efficient blue phosphorescence
Wenpeng Ye, Huili Ma, Huifang Shi et al. · Nature Materials · 2021 · 506 citations
Isolated Chromophores, Photochemistry, Photophysical Property +3